1. Bel’tenev, V.E., Rozhdestvenskaya, I.I., Samsonov, I.K., et al., Prospecting in the Russian Exploration area in the Atlantic Ocean and estimating possible resources of GPS categoroes P2 and P3 in blocks 31–45, in Otchet 37-go reisa NIS “Professor Logatchev” (Report of Cruise 37 of the R/V Professor Logatchev), Moscow: AO PMGRE, 2016.
2. Bich, A.S., Metalliferous sediments in the Pobeda ore cluster (Mid-Atlantic Rise, 17°08′ N), in Novoe v poznanii protsessov rudoobrazovaniya (New Data on the Perception of Ore Formation Processes), Moscow: IGEM RAN, 2017, pp. 62–65.
3. Bich, A.S. and Petrov, A.Yu., Study of metalliferous sediments for reconstructing the processes of hydrothermal ore formation: Example from the Pobeda ore cluster, MAR), in Metallogeniya drevnikh i sovremennykh okeanov. Vulkanizm i rudoobrazovanie (Metallogeny of Ancient and Modern Oceans: Volcanism and Ore Formation), Maslennikov, V.V. and Melekestsev, I.Yu., Eds., Miass: IMin UrO RAN, 2018, pp. 89–93.
4. Bonatti, E., Deep sea authigenic calcite and dolomite, Science, 1966, no. 153, pp. 534–537.
5. Bonatti, E., Fisher, D., Joensuu, O., and Rydell, H., Postdepositional mobility of some transition elements, phosphorus, uranium, and thorium in deep-sea sediments, Geochim. Cosmochim. Acta, 1971, vol. 35, pp. 189–201.